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Biphoton compression in standard optical fiber

机译:标准光纤中的双光子压缩

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Generation of two-photon light with given spectral and temporal properties is of great interest for quantum communication and quantum metrology applications. In particular, preparation of biphotons with ultra-narrow correlation time is a very important task. In a recent series of papers, our group analyzed the generation of twophoton wavepackets, produced by Spontaneous Parametric Down Conversion, in crystals with linearly chirped quasi-phase matching grating. Wavepackets present very broad spectra but a broad spectrum does not necessarily imply small correlation times, although the inverse is true. Indeed, the spectrum broadening induced by the grating is inhomogeneous; for this reason, the two-photon spectral amplitude present a phase (a frequency chirp) that depend nonlinearly on the frequency. Hence, the two-photon wavepackets are not Fourier transform-limited. As suggested in, the ideal way to make the wavepacket perfectly transform limited is to insert in the path of the biphotons a proper optical medium that compensates the non-linear part of the phase factor present in the spectral amplitude. In our work, we investigate the non-local temporal compression of the photons induced by the insertion of a standard optical fibre in the path of one of the two photons. We present and discuss a systematic study of this phenomenon and some optimal situation where the full numerical calculation shows an effect that can be clearly observed with a realistic set-up. The study has open the way to the practical realization of this idea
机译:具有给定的光谱和时间特性的双光子光的产生对于量子通信和量子计量学应用非常感兴趣。特别地,制备具有超窄相关时间的双光子是非常重要的任务。在最近的一系列论文中,我们的小组分析了具有线性chi准相位匹配光栅的晶体中由自发参数下变频产生的两个光子波包的产生。 Wavepackets呈现非常宽的频谱,但是广谱不一定意味着相关时间短,尽管反之亦然。实际上,由光栅引起的光谱展宽是不均匀的。因此,双光子频谱幅度呈现出一个与频率非线性相关的相位(频率线性调频)。因此,双光子波包不受傅里叶变换限制。如建议的那样,使波包完美变换的理想方法是在双光子的路径中插入适当的光学介质,该介质可以补偿出现在频谱幅度中的相位因子的非线性部分。在我们的工作中,我们研究了在两个光子之一的路径中插入标准光纤引起的光子的非局部时间压缩。我们提出并讨论了对这种现象和一些最佳情况的系统研究,其中完整的数值计算显示了可以通过实际设置清楚观察到的效果。该研究为该想法的实际实现开辟了道路。

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